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The New phytologist, ISSN 1469-8137, 2003, Volume 161, Issue 1, pp. 35 - 49
...). Two mechanisms of aerenchyma formation have been described; schizogeny, in which development results in the cell separation and lysigeny, in which cells die to create the gas space... 
Oxygen | Cell death | Cell walls | Plant roots | Tansley Reviews | Corn | Hypoxia | Plants | Animal cells | Apoptosis | Rice | hypoxia | maize (Zea mays) | rice (Oryza sativa) | plant | aerenchyma | apoptosis | Programmed Cell Death | Plant | Maize (Zea mays) | Aerenchyma | Rice (Oryza sativa) | ARABIDOPSIS-THALIANA | NITROGEN-STARVATION | RICE ORYZA-SATIVA | ZEA-MAYS-L | ETHYLENE BIOSYNTHESIS | PLANT SCIENCES | PROGRAMMED CELL-DEATH | DNA FRAGMENTATION | ADVENTITIOUS ROOTS | PHRAGMITES-AUSTRALIS | RADIAL OXYGEN LOSS
Journal Article
by Ni, XL and Gui, MY and Tan, LL and Zhu, Q and Liu, WZ and Li, CX
FRONTIERS IN PLANT SCIENCE, ISSN 1664-462X, 01/2019, Volume 9, p. 1928
Journal Article
Annals of botany, ISSN 0305-7364, 03/2018, Volume 121, Issue 4, pp. 723 - 731
.... Formation of aerenchyma - interconnected spaces that facilitate the movement of gases between and within the aerial and submerged parts of plants - is an adaptive trait for coping with waterlogged conditions. Soybean (Glycine max... 
phloem transport | soybean | Aerenchymatous phellem | sucrose | waterlogging | phellogen | PLANT | MELILOTUS SICULUS | ROOT-SYSTEM | WHEAT | SUGAR | PLANT SCIENCES | ANATOMICAL RESPONSES | SECONDARY AERENCHYMA | ABSCISIC-ACID | GLYCINE-MAX | Original
Journal Article
Field crops research, ISSN 0378-4290, 2013, Volume 152, pp. 8 - 16
► Aerenchyma formation in cereal crops and soybean under flooding is reviewed. ► Cortical aerenchyma with a barrier to radial O2 loss is efficient in flooded cereal crops... 
Cereal crops | Aerenchyma | Flooding tolerance | Soybean | SOYBEAN GLYCINE-MAX | AGRONOMY | RICE ORYZA-SATIVA | WATERLOGGING TOLERANCE | PROGRAMMED CELL-DEATH | TEOSINTE ZEA-NICARAGUENSIS | NITROGEN-FIXATION | SMALL PARTIAL PRESSURES | SECONDARY AERENCHYMA | ADVENTITIOUS ROOTS | RADIAL OXYGEN LOSS | Oxidases | Metallothionein
Journal Article
Plant signaling & behavior, ISSN 1559-2324, 2018, Volume 13, Issue 3, p. e1422464
Although the cross-talk between auxin and ethylene has been described during plant development, the role played by auxin upon gene expression during aerenchyma formation is poorly understood... 
auxin-ethylene interplay | aerenchyma | cell wall degradation | 1-MCP | sugarcane | GENE | BIOCHEMISTRY & MOLECULAR BIOLOGY | MAIZE | IDENTIFICATION | CELL-DEATH | PLANT SCIENCES
Journal Article
Journal Article
AoB plants, ISSN 2041-2851, 2014, Volume 6
... to low-oxygen conditions in the soil (Justin and Armstrong 1987). Aerenchyma formation in roots of crop plants is considered crucial for roots to function in oxygen... 
Oryza sativa | Aerenchyma | Roots | 1-aminocyclopropane-1-carboxylic acid (ACC) | 1-methylcyclopropene (1-MCP) | Ethylene | TOLERANCE | ORYZA-SATIVA-L | roots | HYPOXIA | ethylene | ZEA-MAYS-L | PLANT SCIENCES | OXYGEN | RESPONSES | SMALL PARTIAL PRESSURES | ADVENTITIOUS ROOTS | ECOLOGY | MAIZE | EXOGENOUS ETHYLENE
Journal Article